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Original commit message from CVS: * docs/design/draft-klass.txt: * docs/design/part-clocks.txt: * docs/design/part-events.txt: * docs/design/part-gstbin.txt: * docs/design/part-gstpipeline.txt: * docs/design/part-messages.txt: * docs/design/part-negotiation.txt: * docs/design/part-overview.txt: * docs/design/part-preroll.txt: * docs/design/part-seeking.txt: * docs/design/part-states.txt: * docs/design/part-streams.txt: Documentation updates.
168 lines
6.5 KiB
Text
168 lines
6.5 KiB
Text
Element Klass definition
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------------------------
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Status:
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DRAFT.
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Purpose:
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Applications should be able to retrieve elements from the registry of existing
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elements based on specific capabilities or features of the element.
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A playback application might want to retrieve all the elements that can be
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used for visualisation, for example, or a video editor might want to select all
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video effect filters.
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The topic of defining the klass of elements should be based on use cases.
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Proposal:
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The GstElementDetails contains a field named klass that is a pointer to a
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string describing the element type.
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In this document we describe the format and contents of the string. Elements
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should adhere to this specification although that is not enforced to allow
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for wild (application specific) customisation.
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1) string format
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<keyword>['/'<keyword]*
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The string consists of an _unordered_ list of keywords separated with a '/'
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character. While the / suggests a hierarchy, this is _not_ the case.
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2) keyword categories
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- functional
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Categories are base on _intended usage_ of the element. Some elements
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might have other side-effects (especially for filers/effects). The purpose
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is to list enough keywords so that applications can do meaningfull filtering,
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not to completely describe the functionality, that is expressed in caps etc..
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* Source : produces data
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* Sink : consumes data
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* Filter : filters/transforms data, no modification on the data is
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intended (although it might be unavoidable). The
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filter can decide on input and output caps independently
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of the stream contents (GstBaseTransform).
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* Effect : applies an effect to some data, changes to data are
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intended. Examples are colorbalance, volume. These
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elements can also be implemented with GstBaseTransform.
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* Demuxer : splits audio, video, ... from a stream
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* Muxer : interleave audio, video, ... into one stream, this is
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like mixing but without losing or degrading each separate
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input stream. The reverse operation is possible with a
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Demuxer that reproduces the exact same input streams.
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* Decoder : decodes encoded data into a raw format, there is typically
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no relation between input caps and output caps. The output
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caps are defined in the stream data. This separates the
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Decoder from the Filter and Effect.
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* Encoder : encodes raw data into an encoded format.
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* Mixer : combine audio, video, .. this is like muxing but with
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applying some algorithm so that the individual streams
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are not extractable anymore, there is therefore no
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reverse operation to mixing. (audio mixer, video mixer, ...)
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* Converter : convert audio into video, text to audio, ... The converter
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typically works on raw types only. The source media type
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is listed first.
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* Analyzer : reports about the stream contents.
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* Control : controls some aspect of a hardware device
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* Extracter : extracts tags/headers from a stream
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* Formatter : adds tags/headers to a stream
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* Connector : allows for new connections in the pipeline. (tee, ...)
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* ...
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- Based on media type
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Purpose is to make a selection for elements operating on the different
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types of media. An audio application must be able to filter out the
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elements operating on audio, for example.
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* Audio : operates on audio data
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* Video : operates on video data
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* Text : operates on text data
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* Metadata : operates on metadata
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* ...
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- Extra features
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The purpose is to further specialize the element, mostly for
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application specific needs.
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* Network : element is used in networked situations
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* Protocol : implements some protocol (RTSP, HTTP, ...)
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* Payloader : encapsulate as payload (RTP, RDT,.. )
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* Depayloader : strip a payload (RTP, RDT,.. )
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* RTP : intended to be used in RTP applications
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* Device : operates on some hardware device (disk, network,
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audio card, video card, usb, ...)
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* Visualisation : intended to be used for audio visualisation
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* Debug : intended usage is more for debugging purposes.
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3) suggested order:
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<functional>[/<media type>]*[/<extra...>]*
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4) examples:
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apedemux : Extracter/Metadata
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audiotestsrc : Source/Audio
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autoaudiosink : Sink/Audio/Device
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cairotimeoverlay : Mixer/Video/Text
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dvdec : Decoder/Video
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dvdemux : Demuxer
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goom : Converter/Audio/Video
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id3demux : Extracter/Metadata
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udpsrc : Source/Network/Protocol/Device
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videomixer : Mixer/Video
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ffmpegcolorspace : Filter/Video (intended use to convert video with as little
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visible change as possible)
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vertigotv : Effect/Video (intended use is to change the video)
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volume : Effect/Audio (intended use is to change the audio data)
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vorbisdec : Decoder/Audio
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vorbisenc : Encoder/Audio
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oggmux : Muxer
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adder : Mixer/Audio
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videobox : Effect/Video
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alsamixer : Control/Audio/Device
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audioconvert : Filter/Audio
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audioresample : Filter/Audio
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xvimagesink : Sink/Video/Device
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navseek : Filter/Debug
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decodebin : Decoder/Demuxer
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level : Filter/Analyzer/Audio
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tee : Connector/Debug
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Use cases:
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- get a list of all elements implementing a video effect (pitivi):
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klass.contains (Effect & Video)
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- get list of muxers (pitivi):
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klass.contains (Muxer)
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- get list of video encoders (pitivi):
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klass.contains (Encoder & video)
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- Get a list of all audio/video visualisations (totem):
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klass.contains (Visualisation)
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- Get a list of all decoders/demuxer/metadata parsers/vis (playbin):
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klass.contains (Visualisation | Demuxer | Decoder | (Extractor & Metadata))
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- Get a list of elements that can capture from an audio device (gst-properties):
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klass.contains (Source & Audio & Device)
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* filters out audiotestsrc, since it is not a device
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